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An Algorithmic-Based Fault Detection Technique for the 1-D Discrete Cosine Transform

机译:基于算法的1-D离散余弦变换的故障检测技术

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The discrete cosine transform (DCT) is a key building block for many applications in communications and signal processing. Likewise, it is also popular in space applications such as those that perform audio or image compression. The problem with space applications is that they usually have to work in a high radiation environment that affects electronic components and distorts their correct functionality. Therefore, it is usual to devise alternative implementation of the designs that can detect the presence of errors and discard the affected samples. In this brief, we explore the use of algorithmic-based fault tolerance (ABFT) techniques, which exploit certain algorithmic properties to detect errors. In particular, an ABFT technique for the Arai DCT is proposed and compared to standard protection schemes based on modular redundancy. Experimental results show that important savings in terms of resource overhead can be obtained with our approach while still maintaining the error detection rate at a reasonable level.
机译:离散余弦变换(DCT)是通信和信号处理中许多应用的关键构建块。同样,它在太空应用中也流行,例如那些执行音频或图像压缩的应用程序。空间应用的问题是它们通常必须在高辐射环境中工作,影响电子元件并扭曲其正确的功能。因此,通常能够设计可以检测到错误并丢弃受影响的样本的设计的替代实施。在此简介中,我们探讨了使用基于算法的容错(ABFT)技术,该技术利用某些算法属性来检测错误。特别地,提出了一种用于ARAI DCT的ABFT技术,并与基于模块化冗余的标准保护方案进行比较。实验结果表明,可以通过我们的方法获得资源开销的重要节省,同时仍然在合理的水平下保持错误检测率。

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